Liu Xue-Wei, Weng Li-Li, Xiao Chun-Ping
School of Pharmacy, Changchun University of Traditional Chinese Medicine Changchun 130117, China.
Zhongguo Zhong Yao Za Zhi. 2024 Apr;49(8):2138-2146. doi: 10.19540/j.cnki.cjcmm.20240119.103.
In this study, four Atractylodes chinensis(A. chinensis) with different leaf shapes, such as the split leaf, long and narrow leaf, oval leaf, and large round leaf, were used as experimental materials to establish a method for simultaneously determining atractylodin, atractylenolide Ⅰ, β-eudesmol, and atractylon in the rhizome of A. chinensis. The expression of key enzyme genes for biosynthesis of acetyl-CoA carboxylase(ACC), 3-hydroxy-3-methylglutaryl-CoA reductase(HMGR), and farnesyl pyrophosphate synthase(FPPS) was detected by real-time fluorescence quantitative polymerase chain reaction(qRT-PCR). High performance liquid chromatography(HPLC) was used to compare the difference in the content of four active components in A. chinensis with different leaf shapes, and the correlation between the content of active components and the expression of key enzyme genes in biosynthesis was discussed. The results show that there was good linearity among atractylodin, atractylenolide Ⅰ, β-eudesmol, and atractylon in the range of 3.30-33.00 μg·mL(-1)(r =0.999 7), 12.04-120.40 μg·mL(-1)(r =0.999 5), 29.16-291.60 μg·mL(-1)(r =0.999 5), and 14.20-142.00 μg·mL(-1)(r =0.999 5), respectively. The average recoveries were 99.77%(RSD=2.1%), 98.56%(RSD=1.2%), 103.0%(RSD=1.2%), and 100.6%(RSD=1.5%), respectively. The method was accurate and had good reproducibility, which could be used to simultaneously detect atractylodin, atractylenolide Ⅰ, β-eudesmol, and atractylon. The results showed that there were significant differences in the content of four active components in A. chinensis with different leaf shapes. The content of atractylodin, atractylenolide Ⅰ, and β-eudesmol in A. chinensis with split leaves was the highest, which were 1.341 9, 5.237 2, and 12.084 3 mg·g(-1), respectively. The content of atractylon in A. chinensis with long and narrow leaves was the highest(5.470 1 mg·g(-1)). The content of atractylodin, atractylenolide Ⅰ, β-eudesmol, and atractylon in A. chinensis with oval leaves was the lowest. The total content of the four effective components in descending order was A. chinensis with split leaves > A. chinensis with long and narrow leaves > A. chinensis with large round leaves > A. chinensis with oval leaves. The gene expression levels of key enzymes ACC, HMGR, and FPPS in A. chinensis with split leaves were the highest(P < 0.05), and the gene expression levels of key enzymes ACC and HMGR in A. chinensis with oval leaves were the lowest(P < 0.05). The gene expression level of key enzyme FPPS in A. chinensis with large round leaves was the lowest. In A. chinensis with different leaf shapes, the key enzyme gene ACC was significantly positively correlated with the polyacetylene component, namely atractylodin(P < 0.01), and the key enzyme genes HMGR and FPPS were positively correlated with the sesquiterpene components, namely atractylenolide Ⅰ, β-eudesmol, and atractylon. In summary, the quality of A. chinensis with split leaves is the best, and the biosynthesis of atractylodin is significantly correlated with the gene expression of key enzyme ACC, which provides a theoretical basis for screening and optimizing the germplasm resources of A. chinensis and improving the quality of medicinal materials.
本研究以4种不同叶形的白术,即裂叶、狭长叶、椭圆形叶和大圆叶白术为实验材料,建立了同时测定白术根茎中苍术素、白术内酯Ⅰ、β-桉叶醇和苍术酮的方法。采用实时荧光定量聚合酶链反应(qRT-PCR)检测乙酰辅酶A羧化酶(ACC)、3-羟基-3-甲基戊二酰辅酶A还原酶(HMGR)和法尼基焦磷酸合酶(FPPS)生物合成关键酶基因的表达。采用高效液相色谱(HPLC)比较不同叶形白术中4种活性成分含量的差异,并探讨活性成分含量与生物合成关键酶基因表达之间的相关性。结果表明,苍术素、白术内酯Ⅰ、β-桉叶醇和苍术酮在3.30~33.00 μg·mL⁻¹(r = 0.999 7)、12.04~120.40 μg·mL⁻¹(r = 0.999 5)、29.16~291.60 μg·mL⁻¹(r = 0.999 5)和14.20~142.00 μg·mL⁻¹(r = 0.999 5)范围内线性关系良好。平均回收率分别为99.77%(RSD = 2.1%)、98.56%(RSD = 1.2%)、103.0%(RSD = 1.2%)和100.6%(RSD = 1.5%)。该方法准确,重现性好,可用于同时检测苍术素、白术内酯Ⅰ、β-桉叶醇和苍术酮。结果表明,不同叶形白术中4种活性成分含量存在显著差异。裂叶白术中苍术素、白术内酯Ⅰ和β-桉叶醇含量最高,分别为1.341 9、5.237 2和12.084 3 mg·g⁻¹。狭长叶白术中苍术酮含量最高(5.470 1 mg·g⁻¹)。椭圆形叶白术中苍术素、白术内酯Ⅰ、β-桉叶醇和苍术酮含量最低。4种有效成分总含量由高到低依次为裂叶白术>狭长叶白术>大圆叶白术>椭圆形叶白术。裂叶白术中关键酶ACC、HMGR和FPPS的基因表达水平最高(P < 0.05),椭圆形叶白术中关键酶ACC和HMGR的基因表达水平最低(P < 0.05)。大圆叶白术中关键酶FPPS的基因表达水平最低。在不同叶形白术中,关键酶基因ACC与聚乙炔类成分苍术素显著正相关(P < 0.01),关键酶基因HMGR和FPPS与倍半萜类成分白术内酯Ⅰ、β-桉叶醇和苍术酮正相关。综上所述,裂叶白术质量最佳,苍术素的生物合成与关键酶ACC的基因表达显著相关,为白术种质资源筛选与优化及提高药材质量提供了理论依据。